基于两步有限元法的无铰柔性机构拓扑优化

Benliang Zhu, Xianmin Zhang, Quan Zhang, S. Fatikow
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引用次数: 1

摘要

本研究提出了一种新的问题表述,以解决柔性机构事实上的铰(点挠)问题。主要思想是引入一个额外的目标函数,使两种类型的有限元分析(FEA)的输出之间的距离最小。在此基础上,提出了一种比率成形公式,并在连续型拓扑优化框架内进行了验证。数值算例验证了该方法的有效性。结果表明,该方法可以得到完全不受单节点连接铰约束的柔性机构。
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Topology optimization of hinge-free compliant mechanisms using a two-step FEA method
This study is proposed to solve the compliant mechanism de facto hinge (point flexure) issue by developing a new problem formulation. The main idea is to introduce an additional objective function which is to minimize the distance between the outputs of two types finite element analysis (FEA). A ratio formed formulation is developed based on the method and examined within the continuum type topology optimization framework. Numerical examples are provided to confirm the validity of the proposed method. It is shown that the proposed method gives compliant mechanisms that completely free of one-node connected hinges.
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